Department of Chemistry, University of Kentucky, Lexington, KY 40506, USA.
Department of Pharmaceutical Sciences, College of Pharmacy, University of Kentucky, Lexington, KY 40536, USA.
Molecules. 2020 Dec 4;25(23):5735. doi: 10.3390/molecules25235735.
Herein is reported the synthesis of two Au(III) complexes bearing the (,)-(-)-2,3-Bis(-butylmethylphosphino)quinoxaline (,-QuinoxP*) or (,)-(+)-2,3-Bis(-butylmethylphosphino)quinoxaline (-QuinoxP*) ligands. By reacting two stoichiometric equivalents of HAuCl.3HO to one equivalent of the corresponding QuinoxP* ligand, (,)-(-)-2,3-Bis(-butylmethylphosphino)quinoxalinedichlorogold(III) tetrachloroaurates(III) () and (,)-(+)-2,3-Bis(-butylmethylphosphino)quinoxalinedichlorogold(III) tetrachloroaurates(III) () were formed, respectively, in moderate yields. The structure of (,)-(+)-2,3-Bis(-butylmethylphosphino)quinoxalinedichlorogold(III) tetrachloroaurates(III) () was further confirmed by X-ray crystallography. The antiproliferative activities of the two compounds were evaluated in a panel of cell lines and exhibited promising results comparable to auranofin and cisplatin with IC values between 1.08 and 4.83 µM. It is noteworthy that in comparison to other platinum and ruthenium enantiomeric complexes, the two enantiomers ( and ) do not exhibit different cytotoxic effects. The compounds exhibited stability in biologically relevant media over 48 h as well as inert reactivity to excess glutathione at 37 °C. These results demonstrate that the Au(III) atom, stabilized by the QuinoxP* ligand, can provide exciting compounds for novel anticancer drugs. These complexes provide a new scaffold to further develop a robust and diverse library of chiral phosphorus Au(III) complexes.
本文报道了两种含(,)-(-)-2,3-双(-丁基甲基膦基)喹喔啉(,-QuinoxP*)或(,)-(+)-2,3-双(-丁基甲基膦基)喹喔啉(-QuinoxP*)配体的 Au(III) 配合物的合成。通过将两个化学计量当量的 HAuCl.3HO 与一个当量的相应 QuinoxP配体反应,分别形成(,)-(-)-2,3-双(-丁基甲基膦基)喹喔啉二氯金(III)四氯金(III)()和(,)-(+)-2,3-双(-丁基甲基膦基)喹喔啉二氯金(III)四氯金(III)(),产率适中。(,)-(+)-2,3-双(-丁基甲基膦基)喹喔啉二氯金(III)四氯金(III)()的结构通过 X 射线晶体学进一步证实。两种化合物的抗增殖活性在一组细胞系中进行了评估,结果显示与金诺芬和顺铂相当,IC 值在 1.08 和 4.83 μM 之间。值得注意的是,与其他铂和钌对映体配合物相比,两种对映体(和)没有表现出不同的细胞毒性作用。与生物相关的介质中 48 小时内,两种化合物表现出稳定性,在 37°C 下对过量谷胱甘肽也表现出惰性反应性。这些结果表明,由 QuinoxP配体稳定的 Au(III) 原子可以为新型抗癌药物提供令人兴奋的化合物。这些配合物为进一步开发具有强大和多样化的手性磷金(III)配合物库提供了新的支架。